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@ -21,58 +21,80 @@ namespace { |
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struct SinkDetails { |
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using FactoryFn = std::unique_ptr<Sink> (*)(std::string_view); |
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using ListDevicesFn = std::vector<std::string> (*)(bool); |
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using LatencyFn = u32 (*)(); |
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/// Name for this sink.
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const char* id; |
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std::string_view id; |
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/// A method to call to construct an instance of this type of sink.
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FactoryFn factory; |
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/// A method to call to list available devices.
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ListDevicesFn list_devices; |
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/// Method to get the latency of this backend.
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LatencyFn latency; |
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}; |
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// sink_details is ordered in terms of desirability, with the best choice at the top.
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constexpr SinkDetails sink_details[] = { |
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#ifdef HAVE_CUBEB
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SinkDetails{"cubeb", |
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SinkDetails{ |
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"cubeb", |
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[](std::string_view device_id) -> std::unique_ptr<Sink> { |
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return std::make_unique<CubebSink>(device_id); |
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}, |
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&ListCubebSinkDevices}, |
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&ListCubebSinkDevices, |
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&GetCubebLatency, |
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}, |
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#endif
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#ifdef HAVE_SDL2
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SinkDetails{"sdl2", |
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SinkDetails{ |
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"sdl", |
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[](std::string_view device_id) -> std::unique_ptr<Sink> { |
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return std::make_unique<SDLSink>(device_id); |
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}, |
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&ListSDLSinkDevices}, |
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&ListSDLSinkDevices, |
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&GetSDLLatency, |
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}, |
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#endif
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SinkDetails{"null", |
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[](std::string_view device_id) -> std::unique_ptr<Sink> { |
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return std::make_unique<NullSink>(device_id); |
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}, |
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[](bool capture) { return std::vector<std::string>{"null"}; }}, |
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[](bool capture) { return std::vector<std::string>{"null"}; }, []() { return 0u; }}, |
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}; |
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const SinkDetails& GetOutputSinkDetails(std::string_view sink_id) { |
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auto iter = |
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std::find_if(std::begin(sink_details), std::end(sink_details), |
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[sink_id](const auto& sink_detail) { return sink_detail.id == sink_id; }); |
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const auto find_backend{[](std::string_view id) { |
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return std::find_if(std::begin(sink_details), std::end(sink_details), |
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[&id](const auto& sink_detail) { return sink_detail.id == id; }); |
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}}; |
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if (sink_id == "auto" || iter == std::end(sink_details)) { |
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if (sink_id != "auto") { |
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LOG_ERROR(Audio, "Invalid sink_id {}", sink_id); |
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auto iter = find_backend(sink_id); |
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if (sink_id == "auto") { |
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// Auto-select a backend. Prefer CubeB, but it may report a large minimum latency which
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// causes audio issues, in that case go with SDL.
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#if defined(HAVE_CUBEB) && defined(HAVE_SDL2)
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iter = find_backend("cubeb"); |
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if (iter->latency() > TargetSampleCount * 3) { |
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iter = find_backend("sdl"); |
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} |
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// Auto-select.
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// sink_details is ordered in terms of desirability, with the best choice at the front.
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#else
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iter = std::begin(sink_details); |
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#endif
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LOG_INFO(Service_Audio, "Auto-selecting the {} backend", iter->id); |
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} |
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if (iter == std::end(sink_details)) { |
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LOG_ERROR(Audio, "Invalid sink_id {}", sink_id); |
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iter = find_backend("null"); |
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} |
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return *iter; |
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} |
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} // Anonymous namespace
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std::vector<const char*> GetSinkIDs() { |
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std::vector<const char*> sink_ids(std::size(sink_details)); |
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std::vector<std::string_view> GetSinkIDs() { |
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std::vector<std::string_view> sink_ids(std::size(sink_details)); |
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std::transform(std::begin(sink_details), std::end(sink_details), std::begin(sink_ids), |
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[](const auto& sink) { return sink.id; }); |
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